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Interaction of Shc with Grb2 regulates association of Grb2 with mSOS
K S Ravichandran1, U Lorenz, S E Shoelson
1Division of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts 02115.
Abstract:
The adapter protein Shc has been implicated in Ras signaling via many receptors, including the T-cell antigen receptor (TCR), B-cell antigen receptor, interleukin-2 receptor, interleukin-3 receptor, erythropoietin receptor, and insulin receptor. Moreover, transformation via polyomavirus middle T antigen is dependent on its interaction with Shc and Shc tyrosine phosphorylation. One of the mechanisms of TCR-mediated, tyrosine kinase-dependent Ras activation involves the simultaneous interaction of phosphorylated Shc with the TCR zeta chain and with a second adapter protein, Grb2. Grb2, in turn, interacts with the Ras guanine nucleotide exchange factor mSOS, thereby leading to Ras activation. Although it has been reported that in fibroblasts Grb2 and mSOS constitutively associate with each other and that growth factor stimulation does not alter the levels of Grb2:mSOS association, we show here that TCR stimulation leads to a significant increase in the levels of Grb2 associated with mSOS. This enhanced Grb2:mSOS association, which occurs through an SH3-proline-rich sequence interaction, is regulated through the SH2 domain of Grb2. The following observations support a role for Shc in regulating the Grb2:mSOS association: (i) a phosphopeptide corresponding to the sequence surrounding Tyr-317 of Shc, which displaces Shc from Grb2, abolished the enhanced association between Grb2 and mSOS; and (ii) addition of phosphorylated Shc to unactivated T cell lysates was sufficient to enhance the interaction of Grb2 with mSOS. Furthermore, using fusion proteins encoding different domains of Shc, we show that the collagen homology domain of Shc (which includes the Tyr-317 site) can mediate this effect. Thus, the Shc-mediated regulation of Grb2:mSOS association may provide a means for controlling the extent of Ras activation following receptor stimulation.
Insights
The adapter protein Shc enhances the association between Grb2 and mSOS following T-cell receptor stimulation, which is crucial for Ras signaling pathway activation.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Immunology
Background:
- The adapter protein Shc is involved in Ras signaling downstream of various receptors.
- Shc's interaction and tyrosine phosphorylation are critical for polyomavirus middle T antigen-mediated transformation.
- T-cell receptor (TCR)-mediated Ras activation involves Shc, Grb2, and mSOS.
Purpose of the Study:
- To investigate the role of Shc in regulating the association between Grb2 and mSOS upon TCR stimulation.
- To elucidate the mechanism by which Shc influences Grb2:mSOS complex formation and subsequent Ras activation.
Main Methods:
- T-cell stimulation assays
- Co-immunoprecipitation to assess protein-protein interactions
- Use of phosphopeptides and fusion proteins to study domain-specific interactions
Main Results:
- TCR stimulation significantly increases Grb2 association with mSOS in T cells.
- This enhanced association is mediated by Shc's SH2 domain and involves an SH3-proline-rich sequence interaction.
- A phosphopeptide mimicking Shc Tyr-317 disrupts Grb2:mSOS association, while phosphorylated Shc enhances it.
- The collagen homology domain of Shc, containing Tyr-317, is sufficient to mediate this effect.
Conclusions:
- Shc plays a regulatory role in the Grb2:mSOS complex formation.
- This Shc-mediated regulation of Grb2:mSOS association is a key mechanism controlling Ras pathway activation after receptor stimulation.